Amandip De; Monoranjan Guchait; Arnab Roy · 2026
Paper
Axion-like particles (ALPs) appear in many well-motivated extensions of the Standard Model (SM) and can exhibit characteristic interactions with electroweak gauge bosons ($V = W^\pm/ Z$) through higher-dimensional operators. We explore the production of ALPs ($a$) in association with $V$ at the HL-LHC, with $\sqrt{s}=14~{\rm TeV}$ and an integrated luminosity of $\mathcal{L}=3~{\rm ab}^{-1}$. We study the process $pp\to Va$, with $a\toγγ$, for ALP masses in the range $20~{\rm GeV}\leq m_a\leq 200~{\rm GeV}$. This analysis extends existing associated-production searches by exploiting characteristic recoil and polarization features induced by the momentum-dependent $\rm {V-V-a}$ interaction. Using both cut-based selections and an XGBoost multivariate analysis, we demonstrate that these observables provide robust discrimination against SM backgrounds beyond the diphoton mass peak, improving the sensitivity to electroweak ALP couplings to $C_{WW} \gtrsim 5.6 \times 10^{-3}~\mathrm{TeV}^{-1}$ and $C_{BB} \gtrsim 2.8\times 10^{-2}~\mathrm{TeV}^{-1}$. We further show that, if a resonance peak is observed in data, the same observables can help distinguish an ALP-like signal from a Higgs-like spin--0 state of the same mass.
Analysis
Preparing paper insights from the available abstract and paper details.
Discovery
Masahiro Kawasaki; Jie Sheng; Tsutomu T. Yanagida
Chan-Gyung Park; Dahee Lee; Hyerim Noh; Jai-chan Hwang
Kyohei Yamada
Sreemanti Chakraborti; Soumyajit Datta
Daniel Vaz; Arsen Levitskiy; Duncan Forbes; Aaron J. Romanowsky; Jonah Gannon; Jean P. Brodie; Yimeng Tang; Kenji Bekki; Warrick J. Couch
Md Sadique Anwar; Nivedita Ghosh; Sahabub Jahedi; Tarak Nath Maity
Source record